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用于测量非均相聚合物中畴尺寸的H-F REDOR滤波核磁共振自旋扩散测量

H- F REDOR-filtered NMR spin diffusion measurements of domain size in heterogeneous polymers.

作者信息

Sorte Eric G, Alam Todd M

机构信息

Department of Organic Material Science, Sandia National Laboratories, Albuquerque, NM, 87185, USA.

出版信息

Magn Reson Chem. 2017 Nov;55(11):1006-1014. doi: 10.1002/mrc.4623. Epub 2017 Jul 16.

Abstract

Solid state NMR spectroscopy is inherently sensitive to chemical structure and composition and thus makes an ideal method to probe the heterogeneity of multicomponent polymers. Specifically, NMR spin diffusion experiments can be used to extract reliable information about spatial domain sizes on multiple length scales, provided that magnetization selection of one domain can be achieved. In this paper, we demonstrate the preferential filtering of protons in fluorinated domains during NMR spin diffusion experiments using H- F heteronuclear dipolar dephasing based on rotational echo double resonance (REDOR) MAS NMR techniques. Three pulse sequence variations are demonstrated based on the different nuclei detected: direct H detection, plus both H➔ C cross polarization and H➔ F cross polarization detection schemes. This H- F REDOR-filtered spin diffusion method was used to measure fluorinated domain sizes for a complex polymer blend. The efficacy of the REDOR-based spin filter does not rely on spin relaxation behavior or chemical shift differences and thus is applicable for performing NMR spin diffusion experiments in samples where traditional magnetization filters may prove unsuccessful. This REDOR-filtered NMR spin diffusion method can also be extended to other samples where a heteronuclear spin pair exists that is unique to the domain of interest.

摘要

固态核磁共振光谱对化学结构和组成具有内在的敏感性,因此是探测多组分聚合物异质性的理想方法。具体而言,核磁共振自旋扩散实验可用于在多个长度尺度上提取有关空间域大小的可靠信息,前提是能够实现对一个域的磁化选择。在本文中,我们展示了在核磁共振自旋扩散实验中,基于旋转回波双共振(REDOR)MAS NMR技术,利用H-F异核偶极去相实现对氟化域中质子的优先过滤。基于检测到的不同原子核,展示了三种脉冲序列变体:直接H检测,以及H→C交叉极化和H→F交叉极化检测方案。这种H-F REDOR过滤的自旋扩散方法用于测量复杂聚合物共混物的氟化域大小。基于REDOR的自旋过滤器的功效不依赖于自旋弛豫行为或化学位移差异,因此适用于在传统磁化过滤器可能失败的样品中进行核磁共振自旋扩散实验。这种REDOR过滤的核磁共振自旋扩散方法还可以扩展到其他存在异核自旋对的样品,该异核自旋对是感兴趣域所特有的。

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